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308 lines
11 KiB
C++
308 lines
11 KiB
C++
#include "debug.hpp"
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#include "exceptions.hpp"
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#include "recastmesh.hpp"
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#include "settings.hpp"
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#include "settingsutils.hpp"
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#include "tilespositionsrange.hpp"
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#include "version.hpp"
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#include <components/debug/writeflags.hpp>
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#include <DetourNavMesh.h>
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#include <DetourStatus.h>
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#include <osg/io_utils>
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#include <array>
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#include <filesystem>
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#include <fstream>
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#include <ostream>
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#include <string_view>
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namespace DetourNavigator
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{
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std::ostream& operator<<(std::ostream& stream, const TileBounds& value)
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{
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return stream << "TileBounds {" << value.mMin << ", " << value.mMax << "}";
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}
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std::ostream& operator<<(std::ostream& stream, Status value)
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{
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#define OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(name) \
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case Status::name: \
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return stream << "DetourNavigator::Status::" #name;
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switch (value)
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{
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(Success)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(PartialPath)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(NavMeshNotFound)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(StartPolygonNotFound)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(EndPolygonNotFound)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(TargetPolygonNotFound)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(MoveAlongSurfaceFailed)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(FindPathOverPolygonsFailed)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(InitNavMeshQueryFailed)
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OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE(FindStraightPathFailed)
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}
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#undef OPENMW_COMPONENTS_DETOURNAVIGATOR_DEBUG_STATUS_MESSAGE
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return stream << "DetourNavigator::Error::" << static_cast<int>(value);
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}
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std::ostream& operator<<(std::ostream& s, const Water& v)
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{
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return s << "Water {" << v.mCellSize << ", " << v.mLevel << "}";
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}
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std::ostream& operator<<(std::ostream& s, const CellWater& v)
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{
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return s << "CellWater {" << v.mCellPosition << ", " << v.mWater << "}";
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}
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std::ostream& operator<<(std::ostream& s, const FlatHeightfield& v)
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{
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return s << "FlatHeightfield {" << v.mCellPosition << ", " << v.mCellSize << ", " << v.mHeight << "}";
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}
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std::ostream& operator<<(std::ostream& s, const Heightfield& v)
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{
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s << "Heightfield {.mCellPosition=" << v.mCellPosition << ", .mCellSize=" << v.mCellSize
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<< ", .mLength=" << static_cast<int>(v.mLength) << ", .mMinHeight=" << v.mMinHeight
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<< ", .mMaxHeight=" << v.mMaxHeight << ", .mHeights={";
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for (float h : v.mHeights)
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s << h << ", ";
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s << "}";
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return s << ", .mOriginalSize=" << v.mOriginalSize << "}";
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}
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std::ostream& operator<<(std::ostream& s, CollisionShapeType v)
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{
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switch (v)
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{
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case CollisionShapeType::Aabb:
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return s << "CollisionShapeType::Aabb";
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case CollisionShapeType::RotatingBox:
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return s << "CollisionShapeType::RotatingBox";
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case CollisionShapeType::Cylinder:
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return s << "CollisionShapeType::Cylinder";
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}
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return s << "CollisionShapeType::" << static_cast<std::underlying_type_t<CollisionShapeType>>(v);
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}
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std::ostream& operator<<(std::ostream& s, const AgentBounds& v)
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{
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return s << "AgentBounds {" << v.mShapeType << ", {" << v.mHalfExtents.x() << ", " << v.mHalfExtents.y() << ", "
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<< v.mHalfExtents.z() << "}}";
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}
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namespace
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{
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using StatusString = Debug::FlagString<unsigned int>;
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constexpr std::array dtStatuses{
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StatusString{ DT_FAILURE, "DT_FAILURE" },
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StatusString{ DT_SUCCESS, "DT_SUCCESS" },
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StatusString{ DT_IN_PROGRESS, "DT_IN_PROGRESS" },
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StatusString{ DT_WRONG_MAGIC, "DT_WRONG_MAGIC" },
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StatusString{ DT_WRONG_VERSION, "DT_WRONG_VERSION" },
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StatusString{ DT_OUT_OF_MEMORY, "DT_OUT_OF_MEMORY" },
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StatusString{ DT_INVALID_PARAM, "DT_INVALID_PARAM" },
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StatusString{ DT_BUFFER_TOO_SMALL, "DT_BUFFER_TOO_SMALL" },
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StatusString{ DT_OUT_OF_NODES, "DT_OUT_OF_NODES" },
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StatusString{ DT_PARTIAL_RESULT, "DT_PARTIAL_RESULT" },
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};
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}
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std::ostream& operator<<(std::ostream& stream, const WriteDtStatus& value)
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{
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return Debug::writeFlags(stream, value.mStatus, dtStatuses);
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}
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std::ostream& operator<<(std::ostream& stream, const Flag value)
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{
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switch (value)
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{
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case Flag_none:
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return stream << "none";
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case Flag_walk:
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return stream << "walk";
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case Flag_swim:
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return stream << "swim";
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case Flag_openDoor:
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return stream << "openDoor";
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case Flag_usePathgrid:
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return stream << "usePathgrid";
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}
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return stream;
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}
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std::ostream& operator<<(std::ostream& stream, const WriteFlags& value)
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{
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if (value.mValue == Flag_none)
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{
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return stream << Flag_none;
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}
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else
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{
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bool first = true;
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for (const auto flag : { Flag_walk, Flag_swim, Flag_openDoor, Flag_usePathgrid })
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{
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if (value.mValue & flag)
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{
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if (!first)
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stream << " | ";
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first = false;
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stream << flag;
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}
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}
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return stream;
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}
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}
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std::ostream& operator<<(std::ostream& stream, AreaType value)
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{
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switch (value)
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{
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case AreaType_null:
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return stream << "null";
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case AreaType_water:
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return stream << "water";
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case AreaType_door:
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return stream << "door";
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case AreaType_pathgrid:
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return stream << "pathgrid";
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case AreaType_ground:
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return stream << "ground";
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}
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return stream << "unknown area type (" << static_cast<std::underlying_type_t<AreaType>>(value) << ")";
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}
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std::ostream& operator<<(std::ostream& stream, ChangeType value)
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{
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switch (value)
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{
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case ChangeType::remove:
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return stream << "ChangeType::remove";
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case ChangeType::add:
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return stream << "ChangeType::add";
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case ChangeType::update:
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return stream << "ChangeType::update";
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}
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return stream << "ChangeType::" << static_cast<int>(value);
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}
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std::ostream& operator<<(std::ostream& stream, const Version& value)
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{
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return stream << "Version {" << value.mGeneration << ", " << value.mRevision << "}";
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}
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std::ostream& operator<<(std::ostream& stream, const TilesPositionsRange& value)
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{
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return stream << "TilesPositionsRange {" << value.mBegin << ", " << value.mEnd << "}";
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}
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std::ostream& operator<<(std::ostream& stream, const AreaCosts& value)
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{
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return stream << "AreaCosts {"
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<< ".mWater = " << value.mWater << ", .mDoor = " << value.mDoor
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<< ", .mPathgrid = " << value.mPathgrid << ", .mGround = " << value.mGround << "}";
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}
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std::ostream& operator<<(std::ostream& stream, const DetourSettings& value)
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{
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return stream << "DetourSettings {"
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<< ".mMaxPolys = " << value.mMaxPolys
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<< ", .mMaxNavMeshQueryNodes = " << value.mMaxNavMeshQueryNodes
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<< ", .mMaxPolygonPathSize = " << value.mMaxPolygonPathSize
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<< ", .mMaxSmoothPathSize = " << value.mMaxSmoothPathSize << "}";
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}
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void writeToFile(const RecastMesh& recastMesh, const std::string& pathPrefix, const std::string& revision,
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const RecastSettings& settings)
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{
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const auto path = pathPrefix + "recastmesh" + revision + ".obj";
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std::ofstream file(std::filesystem::path(path), std::ios::out);
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if (!file.is_open())
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throw NavigatorException("Open file failed: " + path);
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file.exceptions(std::ios::failbit | std::ios::badbit);
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file.precision(std::numeric_limits<float>::max_exponent10);
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std::vector<float> vertices = recastMesh.getMesh().getVertices();
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for (std::size_t i = 0; i < vertices.size(); i += 3)
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{
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file << "v " << toNavMeshCoordinates(settings, vertices[i]) << ' '
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<< toNavMeshCoordinates(settings, vertices[i + 2]) << ' '
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<< toNavMeshCoordinates(settings, vertices[i + 1]) << '\n';
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}
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std::size_t count = 0;
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for (int v : recastMesh.getMesh().getIndices())
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{
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if (count % 3 == 0)
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{
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if (count != 0)
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file << '\n';
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file << 'f';
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}
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file << ' ' << (v + 1);
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++count;
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}
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file << '\n';
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}
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void writeToFile(const dtNavMesh& navMesh, const std::string& pathPrefix, const std::string& revision)
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{
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const int navMeshSetMagic = 'M' << 24 | 'S' << 16 | 'E' << 8 | 'T'; //'MSET';
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const int navMeshSetVersion = 1;
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struct NavMeshSetHeader
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{
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int magic;
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int version;
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int numTiles;
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dtNavMeshParams params;
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};
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struct NavMeshTileHeader
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{
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dtTileRef tileRef;
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int dataSize;
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};
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const auto path = pathPrefix + "all_tiles_navmesh" + revision + ".bin";
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std::ofstream file(std::filesystem::path(path), std::ios::out | std::ios::binary);
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if (!file.is_open())
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throw NavigatorException("Open file failed: " + path);
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file.exceptions(std::ios::failbit | std::ios::badbit);
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NavMeshSetHeader header;
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header.magic = navMeshSetMagic;
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header.version = navMeshSetVersion;
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header.numTiles = 0;
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for (int i = 0; i < navMesh.getMaxTiles(); ++i)
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{
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const auto tile = navMesh.getTile(i);
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if (!tile || !tile->header || !tile->dataSize)
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continue;
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header.numTiles++;
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}
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header.params = *navMesh.getParams();
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using const_char_ptr = const char*;
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file.write(const_char_ptr(&header), sizeof(header));
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for (int i = 0; i < navMesh.getMaxTiles(); ++i)
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{
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const auto tile = navMesh.getTile(i);
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if (!tile || !tile->header || !tile->dataSize)
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continue;
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NavMeshTileHeader tileHeader;
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tileHeader.tileRef = navMesh.getTileRef(tile);
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tileHeader.dataSize = tile->dataSize;
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file.write(const_char_ptr(&tileHeader), sizeof(tileHeader));
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file.write(const_char_ptr(tile->data), tile->dataSize);
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}
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}
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}
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